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April 1, 2026Genes0 citationsOpen Access

Genetic Characterization of the Rayed Pearl Oyster Pinctada radiata in the Eastern Adriatic Sea (Central Mediterranean)

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MPMirela PetrićRSRino StanićTĆTena Ćurko

Key Points

  • The study aims to confirm the species identity of Pinctada radiata and assess its genetic variation in the Adriatic Sea compared to other regions.
  • Integrated shell morphometric data with molecular analyses.
  • Utilized mitochondrial COI and nuclear ITS2 markers for genetic assessment.
  • Conducted phylogenetic analyses to determine species relationships.
  • Confirmed Pinctada radiata as a distinct lineage using COI.
  • Observed low haplotype and nucleotide diversity in Mediterranean populations.
  • Noted weak genetic structuring in Adriatic populations, suggesting recent colonization.

Abstract

Background/Objectives: Non-indigenous species are increasingly reshaping Mediterranean marine ecosystems, particularly under ongoing climate warming. The rayed pearl oyster Pinctada radiata, a thermophilic species originating from the Indo-Pacific region, is one of the earliest and most successful invaders in the Mediterranean Sea and has recently established populations in the Adriatic Sea. Methods: This study integrates preliminary shell morphometric data with molecular genetic analyses based on mitochondrial cytochrome c oxidase subunit I (COI) and nuclear internal transcribed spacer 2 (ITS2) markers to confirm species identity and examine patterns of genetic variation in comparison with other Mediterranean Sea regions and the Persian Gulf. Results: Phylogenetic analyses based on COI confirmed P. radiata as a distinct and well-supported monophyletic lineage, whereas the nuclear ITS2 marker showed limited resolution and interspecific overlap. Mediterranean and Adriatic populations showed low COI haplotype and nucleotide diversity and weak genetic structuring, consistent with recent colonization and secondary expansion, whereas Persian Gulf populations were more genetically diverse. Conclusions: Future studies should employ larger sample sizes and broader geographic sampling across both the Mediterranean Sea and the full native range of P. radiata, combined with high-resolution genome-wide nuclear markers, to better resolve connectivity and invasion dynamics.

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Cite This Study

Petrić et al. (2026) studied this question.

synapsesocial.com/papers/69cd7a1b5652765b073a7077https://doi.org/10.3390/genes17040397
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